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Comparison of reaction forces on the anterior cruciate and anterolateral ligaments during internal rotation and anterior drawer forces at different flexion angles of the knee joint

机译:在膝关节的不同屈曲角度的内部旋转和前抽屉中反应和前瓣韧带上的反作用力的比较

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Abstract Background Having a complicated anatomy, the knee joint has been further detailed and a new formation defined, the anterolateral ligament (ALL), in recent studies. While the importance of this ligament, which previously was associated with Segond fractures, was explained via clinical, radiologic and biomechanical studies, and basically, is thought to be a fixator structures for the tibia against internal rotation stress. Although in recent studies efficient surgical treatment was applied to patients who underwent anterior cruciate ligament (ACL) operation, some patients having a positive pivot test highlights the clinical importance of the ALL. The aim of this study is to evaluate reaction forces of different flexion angles on the tibia during internal rotation and anterior drawer tests on both the ALL and ACL, and to examine theimportance of this ligament in knee biomechanics by a finite element analysis method. Method In this study, normal anatomy knee joint was modelled using Computed Tomography images from lower extremity length in DICOM format. 0°, 15°,30°,45°,60°,75° and 90° angles of flexion were applied, respectively, to these models and reaction force vectors formed on both ligaments were examined separately and as total vector and size by applying internal rotation and anterior drawer forces on each model. Non‐linear analysis was conducted using ANSYS (version 17) with the same limit conditions applied to all models. Results After all models were examined, in general when comparing reaction forces, those on the ACL were found to be higher. However, when vectoral directions were examined, forces on ALL increased with increased flexion ratio and internal rotation momentum. Beyond 30° flexion, the tensile force on the ALL is increased and compressive overload on the ACL occurs. Conclusion The ALL plays an important role in stability, especially against internal rotation forces, and an increased knee joint flexion ratio increases the stability contribution ratio. In particular, at 30° and higher angles, ACL reflects an antagonist effect and contributes to knee joint stability for rotational and mediolateral transposition.
机译:摘要背景具有复杂的解剖学,膝关节被进一步详细描述,并且在最近的研究中,前韧带(全部)定义了一种新的形成。虽然这种韧带的重要性以临床,放射学和生物力学研究解释了先前与Segond骨折相关的韧带,并且基本上被认为是胫骨的固定器结构免受内部旋转应力。虽然在最近的研究中,应用有效的手术治疗应用于接受前十字韧带(ACL)操作的患者,但有些患者具有阳性枢轴测试突出了全部的临床重要性。本研究的目的是评估在全部和ACL的内部旋转和前抽屉测试期间不同屈曲角度在胫骨上的反应力,并通过有限元分析方法检查膝关节生物力学中该韧带的Idipportance。该研究中的方法,使用DICOM格式下肢长度的计算机断层扫描图像进行模拟正常解剖膝关节。 0°,15°,30°,45°,60°,75°和90°的弯曲角度分别施加到这些模型中,并且通过施加分别检查在两个韧带上形成的反作用力矢量并作为总矢量和尺寸每个模型上的内部旋转和前抽屉力。使用ANSYS(版本17)进行非线性分析,其应用于所有模型的相同限制条件。结果在检查所有模型后,通常在比较反作用力时,发现ACL的那些较高。然而,当检查载体方向时,弯曲比和内部旋转动量增加的所有力增加。超过30°屈曲,所有的拉力都会增加,而ACL上的压缩过载是增加。结论全部在稳定性中发挥着重要作用,特别是对内部旋转力,膝关节屈曲比增加增加了稳定性贡献比。特别地,在30°和更高的角度,ACL反映拮抗剂效果并有助于旋转和中介转置的膝关节稳定性。

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